The research project focuses on the utilization of three-dimensional printing (3D printing) to create functional elements in flexible electronic devices. 3D printing provides the capability to manufacture customised components with specific shapes and geometries, which is particularly useful in the field of flexible electronic devices, where flexibility and adaptability are key characteristics.
The development of planar optics with oxide-based metamaterials represents a significant advancement in the engineering of optical devices, with potential applications in fields such as optical communication, remote sensing, and the enhancement of imaging systems. This project not only focuses on technological innovation but also aims to contribute to the fundamental understanding of the relationship between crystal structure and optical properties of materials, thereby promoting advances in materials science and optical engineering.
The research project titled "Advanced Oxides for Plasmonics: Applications in Mid-Infrared Photodetection" focuses on exploring the properties of advanced oxides with the aim of developing innovative applications in photodetection, specifically in the mid-infrared range. Plasmonics, involving the interaction between light and metallic particles, becomes a key component of this project.
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